Nanostructures constructed from metal and semiconductor nanocrystals conjugated to, and organized by DNA are an emerging class of material with collective optical properties. We created discrete pyramids of DNA with gold nanocrystals at the tips. By taking small angle X-ray scattering (SAXS) measurments from solutions of these pyramids we confirmed that this pyramidal geometry creates structures which are more rigid in solution than linear DNA. We then took advantage of the tetrahedral symmetry to demonstrate construction of chiral nanostructures
This Communication reports complementary strategies to control the face geometry during the self-ass...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
Nanostructures constructed from metal and semiconductor nanocrystals conjugated to, and organized by...
One of the goals of nanotechnology is to enable programmed self-assembly of patterns made of various...
Nanoparticles conjugated with DNA ligands possess 1) assembly behavior that may be controlled by DNA...
Precise control over the structure of metal nanomaterials is important for developing advanced nanob...
Gold nanocrystals have attracted considerable attention due to their excellent physical and chemical...
Over the past ten years, methods have been developed to construct discrete nanostructures using nano...
Over the past ten years, methods have been developed to construct discrete nanostructures using nan...
PATTERNING matter on the nanometre scale is an important objective of current materials chemistry an...
DNA nanotechnology has blossomed in the last decade, with applications including the creation of bio...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
DNA nanotechnology is a rapidly evolving research area that utilizes DNA as unique construction mate...
This Communication reports complementary strategies to control the face geometry during the self-ass...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
Nanostructures constructed from metal and semiconductor nanocrystals conjugated to, and organized by...
One of the goals of nanotechnology is to enable programmed self-assembly of patterns made of various...
Nanoparticles conjugated with DNA ligands possess 1) assembly behavior that may be controlled by DNA...
Precise control over the structure of metal nanomaterials is important for developing advanced nanob...
Gold nanocrystals have attracted considerable attention due to their excellent physical and chemical...
Over the past ten years, methods have been developed to construct discrete nanostructures using nano...
Over the past ten years, methods have been developed to construct discrete nanostructures using nan...
PATTERNING matter on the nanometre scale is an important objective of current materials chemistry an...
DNA nanotechnology has blossomed in the last decade, with applications including the creation of bio...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
DNA nanotechnology is a rapidly evolving research area that utilizes DNA as unique construction mate...
This Communication reports complementary strategies to control the face geometry during the self-ass...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...
DNA self-assembly is a powerful route to the production of very small, complex structures. When used...